Topological imaging in layered plate by guided waves

Chao Zhang, Shou-guo Yan, Bi-xing Zhang, Wen-han Lv
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引用次数: 1

Abstract

The defect imaging by guided waves in layered plate is always an attractive project in non-destructive testing. The aim of this paper is to study the topological imaging theory and to determine whether it is possible to give the locations of all the defects in layered plate. A two-layered plate consist of aluminum and steel is considered. First, the formulas of the topological gradient are deduced theoretically. It is proved that the topological gradient is just a function in space domain and could indicate the defects' locations at the extreme value point. Then, according to the method of the topological imaging, the solutions of two situations are required, the forward problem and the adjoint problem, respectively. The model building and propagation of guided waves are all simulated in finite element software ANSYS. It is found that all the defects are located precisely at the topological image, which suggests that topological imaging can be an efficient method to obtain all the defects' locations in layered plate.
层状板的导波拓扑成像
层状板的导波缺陷成像一直是无损检测领域的研究热点。本文的目的是研究拓扑成像理论,并确定是否有可能给出层状板中所有缺陷的位置。考虑由铝和钢组成的双层板。首先,从理论上推导了拓扑梯度的计算公式。证明了拓扑梯度是空间域上的一个函数,可以表示缺陷在极值点的位置。然后,根据拓扑成像的方法,分别求出正演问题和伴随问题的解。在有限元软件ANSYS中对导波的建模和传播过程进行了模拟。发现所有缺陷都精确定位在拓扑图像上,这表明拓扑成像是一种有效的方法,可以获得层状板中所有缺陷的位置。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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